Carnot Engine

The Carnot engine is an idealized heat engine that establishes the maximum possible efficiency for converting heat into mechanical work between two temperature reservoirs. It operates through a reversible cycle of two isothermal processes, in which the working gas absorbs and rejects heat at constant temperature, and two adiabatic processes, in which it expands or compresses without heat exchange. Its efficiency depends only on the temperatures of the hot and cold reservoirs, not on the working substance. Although no real engine can achieve perfect reversibility, the Carnot engine provides a benchmark for evaluating power plants, refrigeration systems, and other thermodynamic devices.

Carnot Engine - Related Videos

Education

JoVE Core - Physics

The Carnot Cycle

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2023

Converting work to heat is an irreversible process, and the purpose of a heat engine is to reverse the effect partially. Heat engines aim to increase the efficiency of the reversal, that is, maximize the work retrieved from heat. If the efficiency of a heat engine were 100%, it would imply reversing the process completely without introducing any other effect. Thus, it would violate the second law of thermodynamics. What could be the theoretical limit to the efficiency of a heat engine? The...

Carnot Cycle and Efficiency

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2026

The Second Law of Thermodynamics asserts that it's impossible for any heat engine to achieve 100% efficiency. While contemplating the maximum possible efficiency, Nicolas Sadi Carnot conceptualized an ideal heat engine. This engine gets its energy from a high-temperature reservoir. It then performs some work and releases the remaining energy into a low-temperature reservoir.The Carnot cycle, named after Sadi Carnot, is fully reversible. The cycle consists of four distinct stages. In the first...

Efficiency of The Carnot Cycle

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2025

The hypothetical Carnot cycle consists of an ideal gas subjected to two isothermal and two adiabatic processes. Since the internal energy of an ideal gas depends only on its temperature, which is the same before and after the completion of the Carnot cycle, there is no change in its internal energy. Hence, using the first law of thermodynamics, the total heat exchanged by the ideal gas equals the total work done. Thus, we can quantify the efficiency of the Carnot cycle via the heat exchanged...

The Carnot Cycle and the Second Law of Thermodynamics

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2025

The Carnot engine works between two heat reservoirs of fixed temperatures. The Carnot cycle begs the following question: Is it possible to devise a heat engine that is more efficient than a Carnot engine between two fixed temperatures? The answer lies in designing a Carnot refrigerator. Since the individual steps in a Carnot cycle can be reversed, the entire cycle is, thus, reversible. If a Carnot cycle is reversed, it becomes a Carnot refrigerator. It extracts heat Qc from a cold reservoir at...

Research

JoVE Journal - Biology

Experimental Approaches to Tissue Engineering

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Cited by 2 •

2007

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